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首页> 外文期刊>Trees. Structure and Function >Enhancing hybrid Liquidambar somatic seedling production using a temporary immersion bioreactor
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Enhancing hybrid Liquidambar somatic seedling production using a temporary immersion bioreactor

机译:使用临时浸没生物反应器增强杂种液体甘草体幼苗生产

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Key message Temporary immersion bioreactors can improve hybrid sweetgum somatic embryo conversion and somatic seedling growth rates compared to semisolid medium, significantly improving somatic seedling production efficiency for hybrid sweetgum, an emerging woody biomass crop. Fast-growing hybrid southern hardwood trees should make excellent material for woody biomass production in the Southeastern US, if elite clones can be identified and efficiently propagated. We have enhanced the potential of sweetgum (Liquidambar styraciflua) as a biomass species by generating hybrids between the tree and its Chinese relative, Liquidambar formosana, and propagating the most promising clones via somatic embryogenesis. Some of the hybrid clones have already demonstrated superior biomass productivity compared to elite L. styraciflua trees. However, production of somatic seedlings from these clones remains labor-intensive. Bioreactors, specifically temporary immersion designs, such as the RITA (R), have been applied to improve the efficiency of in vitro propagation of a number of woody species. We tested RITA (R) bioreactors for their potential to improve the production efficiency of high-quality hybrid sweetgum somatic seedlings. In one tested genotype, a RITA (R) with 50 somatic embryos had about 66% higher conversion frequency (p < 0.05) and produced about 40% more "high-quality" somatic seedlings (p < 0.05) than when somatic embryos were germinated on semisolid medium in GA-7 vessels. In all the genotypes we tested, somatic seedlings produced in RITA (R) bioreactors had higher survival percentages by the end of acclimatization than somatic seedlings produced on semisolid medium in GA-7 vessels.
机译:关键信息:与半固体培养基相比,临时浸没式生物反应器可以提高杂交甜桉体细胞胚胎转化率和体细胞幼苗生长率,显著提高杂交甜桉(一种新兴木本生物质作物)的体细胞幼苗生产效率。如果能找到优良无性系并进行有效繁殖,快速生长的杂交南方阔叶树将成为美国东南部生产木本生物量的优良材料。我们通过在枫香树与其中国近亲枫香之间杂交,并通过体细胞胚胎发生繁殖最有希望的无性系,增强了枫香作为生物量物种的潜力。一些杂交无性系已经证明,与优良的柱花树相比,其生物量生产力更高。然而,从这些无性系生产体细胞苗仍然是劳动密集型的。生物反应器,特别是临时浸入式设计,如RITA(R),已被用于提高许多木本物种的体外繁殖效率。我们测试了RITA(R)生物反应器,以了解其提高优质杂交甜胶体细胞苗生产效率的潜力。在一个测试基因型中,含有50个体细胞胚胎的RITA(R)的转化率比在GA-7容器中的半固体培养基上萌发体细胞胚胎时高约66%(p<0.05),产生的“优质”体细胞幼苗(p<0.05)多约40%。在我们测试的所有基因型中,RITA(R)生物反应器中产生的体细胞苗在驯化结束时的存活率高于GA-7容器中半固体培养基中产生的体细胞苗。

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